疫苗激发的抗体限制葡萄糖的供应以控制布鲁氏菌感染

Bárbara Ponzilacqua-Silva, Alexis S Dadelahi, Mostafa F N Abushahba, Charles R Moley, Jerod A Skyberg
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摘要

疫苗诱导的免疫反应对宿主代谢物可用性的影响尚未得到很好的研究。在这里,我们发现事先接种疫苗会改变接种布鲁氏菌的小鼠的代谢状况。特别是,接种疫苗的小鼠体内葡萄糖水平会以抗体依赖的方式降低。我们还发现,在接种疫苗的野生型小鼠中,葡萄糖转运体基因 gluP 在布鲁氏菌毒力中的作用要小于不能分泌抗体的接种疫苗小鼠。这些数据表明,疫苗激发的抗体部分是通过限制葡萄糖的供应来保护宿主的。此外,布鲁氏菌和其他病原体可能需要在接种疫苗的宿主体内采用不同的代谢策略。
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Vaccine Elicited Antibodies Restrict Glucose Availability to Control Brucella Infection
The impact of vaccine-induced immune responses on host metabolite availability has not been well studied. Here we show prior vaccination alters the metabolic profile of mice challenged with Brucella melitensis. In particular, glucose levels were reduced in vaccinated mice in an antibody-dependent manner. We also found the glucose transporter gene, gluP, plays a lesser role in B. melitensis virulence in vaccinated wild-type mice relative to vaccinated mice unable to secrete antibodies. These data indicate vaccine-elicited antibodies protect the host in part by restricting glucose availability. Moreover, Brucella and other pathogens may need to employ different metabolic strategies in vaccinated hosts.
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